利用气凝胶提高管道和结构能源效率的方法

Допомогою Аерогелю, Ю.С. Соколан, Sokolan Yu.S
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引用次数: 0

摘要

问题陈述。本文探讨了建筑节能的途径,即法规框架与欧洲标准的符合性,以供热系统为例,减少能源载体在管道运输过程中的热损失的可能性,以及减少建筑和结构运行过程中的热损失。文章的第二部分介绍了在乌克兰最常用的各种隔热材料的分析研究结果。有些材料不能用于结构复杂的结构和管道。通过使用气凝胶作为隔热材料,可以解决能源效率问题,以及改善隔音性能,减少火灾危险,减少建筑物和结构的承重结构的负荷。该材料的特点是导热系数对环境温度变化的依赖性较低,这使其成为在恶劣操作条件下使用的最佳选择。本文的目的是考虑如何使用现代气凝胶保温材料来提高结构和管道的能源效率。结论。通过对各种保温材料的分析研究发现,卷形气凝胶除了传热系数低外,还具有更好的性能,即材料不易燃,环境安全,重量轻,减轻了结构的负荷,易于安装,可用于复杂结构,并且隔音率高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
WAYS TO IMPROVE THE ENERGY EFFICIENCY OF PIPELINES AND STRUCTURES USING AEROGEL
Problem statement. The paper explores ways of energy saving in buildings, namely, the compliance of the regulatory framework with European standards, the possibilities of reducing heat losses during the transportation of energy carriers through pipelines on the example of heat supply systems and reducing heat losses during the operation of buildings and structures. The second part of the article presents the results of analytical studies of various heat-insulating materials that are most commonly used in Ukraine. Some of these materials cannot be used on structures and pipelines of complex configuration. The issue of energy efficiency, along with improving sound insulation properties, reducing fire hazard, and reducing loads on the load-bearing structures of buildings and structures, can be addressed by using aerogels as a thermal insulation material. The material is characterized by a low dependence of the thermal conductivity coefficient on changes in ambient temperature, which makes it the best option for use in harsh operating conditions. The purpose of the article is to consider ways to improve the energy efficiency of structures and pipelines using modern aerogel insulation material. Conclusions. Having conducted analytical studies of various thermal insulation materials, it was found that aerogels in roll form, in addition to a low heat transfer coefficient, are characterized by better performance properties, namely non-flammability of the material, environmental safety, low weight, which reduces the load on structures, ease of installation, the possibility of using for structures of complex configuration, and a high rate of sound insulation.
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